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A DQ droop control strategy for fixed frequency VSI-based AC microgrids

机译:基于固定频率VSI的交流微电网的DQ下垂控制策略

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The development of distributed energy resources, renewable technologies, and storage systems has given great importance to power electronics that enable coordination and parallel operations of multiple distributed generation units (DGUs) in microgrids. These DGUs are electronically-coupled to each other through power converters that can accurately control their output frequency. This paper presents a droop control technique for fixed frequency VSI-based ac microgrids that combines reference frame transformation, Lyapunov stability analysis, and a modified dc droop control strategy to share active and reactive power between the DGUs without altering the frequency and magnitude of the bus voltage in the islanded microgrid. The simulations show that the proposed distributed droop control ensures proper sharing of the active and reactive power, and regulates the bus voltage at the nominal value while operating at a fixed frequency.
机译:分布式能源,可再生技术和存储系统的开发对电力电子设备非常重要,因为它使微电网中的多个分布式发电单元(DGU)能够进行协调和并行操作。这些DGU通过可精确控制其输出频率的功率转换器彼此电子耦合。本文提出了一种针对固定频率,基于VSI的交流微电网的下垂控制技术,该技术结合了参考框架变换,Lyapunov稳定性分析和改进的直流下垂控制策略,可在DGU之间共享有功和无功功率,而不会改变总线的频率和幅度孤岛微电网中的电压。仿真表明,所提出的分布式下垂控制可确保有功和无功功率的适当分配,并在以固定频率运行时将母线电压调节至标称值。

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